Locust Olfactory Circuits

Locust olfactory circuits are the neural pathways that detect and interpret airborne chemical cues, offering a tractable model for studying how brains transform sensory input into behavior. Odor molecules activate receptor neurons in the antennae, which transmit patterned signals to the antennal lobe, where local networks organize and refine odor representations before projection neurons relay them to higher brain regions. In locusts, these circuits support odor discrimination, learning, and decisions relevant to feeding and social behavior. Their relatively accessible anatomy and identifiable neurons enable researchers to combine electrophysiology, imaging, and computational analysis to link circuit dynamics with behavior and inform broader principles of sensory coding and neural computation.

Locust Olfactory Circuits - Related Videos

Research

JoVE Journal - Neuroscience

Multi-unit Recording Methods to Characterize Neural Activity in the Locust (Schistocerca Americana) Olfactory Circuits

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Cited by 44 •

2013

We demonstrate variations of the extracellular multi-unit recording technique to characterize odor-evoked responses in the first three stages of the invertebrate olfactory pathway. These techniques can easily be adapted to examine ensemble activity in other neural systems as well.

Localization of Odorant Receptor Genes in Locust Antennae by RNA In Situ Hybridization

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Cited by 5 •

2017

This paper describes a detailed and highly effective RNA in situ hybridization protocol particularly for low-level expressed Odorant Receptor (OR) genes, as well as other genes, in insect antennae using digoxigenin (DIG)-labeled or biotin-labeled probes.

In-vivo and Ex-vivo Calcium Imaging of an Olfactory Circuit Neuron in the Third-Instar Drosophila melanogaster Larva

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2025

We present calcium imaging protocols for a Drosophila larval olfactory neuron, using a topical tissue adhesive for immobilization. This method enhances stability, facilitating reliable in-vivo and ex-vivo experiments. Custom R scripts analyze calcium signals, providing an efficient platform for detailed neurophysiological research.

Single Sensillum Recordings for Locust Palp Sensilla Basiconica

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Cited by 7 •

2018

This paper describes a detailed and highly effective protocol for single sensillum recordings from the sensilla basiconica on the palps of insect mouthparts.

An Explant System for Time-Lapse Imaging Studies of Olfactory Circuit Assembly in Drosophila

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Cited by 7 •

2021

This protocol describes the dissection procedure, culture condition, and live imaging of an antennae-brain explant system for the study of the olfactory circuit assembly.

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